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首页> 外文期刊>Journal of the American Society for Horticultural Science >Involvement of Ca2+ in Regulation of Physiological Indices and Heat Shock Factor Expression in Four Iris germanica Cultivars under High-temperature Stress
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Involvement of Ca2+ in Regulation of Physiological Indices and Heat Shock Factor Expression in Four Iris germanica Cultivars under High-temperature Stress

机译:Ca 2+参与高温胁迫下四个鸢尾品种生理指标的调控和热激因子的表达

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Although tolerance to high temperature is crucial to the summer survival of Iris germanica cultivars in subtropical areas, few physiological studies have been conducted on this topic, previously. To remedy this, this study explored the physiological response and expression of heat shock factor in four I. germanica cultivars with varying levels of thermotolerance. The plants' respective degrees of high-temperature tolerance were evaluated by measuring the ratio and area of withered leaves under stress. Several physiological responses to high temperatures were investigated, including effects on chlorophyll, antioxidant enzymes, proline, and soluble protein content in the leaves of four cultivars. CaCl2 was sprayed on 'Gold Boy' and 'Royal Crusades' considered being sensitive to high temperatures to study if Ca2+ could improve the tolerance, and LaCl3 was sprayed on 'Music Box' and `Galamadrid' with better high-temperature tolerance to test if calcium ion blocker could decrease their tolerance. Heat shock factor genes were partially cloned according to the conserved region sequence, and expression changes to high-temperature stress with CaCl2 or LaCl3 treatments were thoroughly analyzed. Results showed that high temperature is the primary reason for large areas of leaf withering. The ratio and area of withered leaves on 'Music Box' and `Galamadrid' were smaller than 'Gold Boy' and 'Royal Crusades'. CaCl2 slowed the degradation of chlorophyll content and increased proline and soluble protein in 'Gold Boy' and 'Royal Crusades' but had no significant effect on activating peroxidase or superoxide to improve high-temperature tolerance. Genetic expression of heat shock factor in 'Gold Boy' and 'Royal Crusades' was upregulated by Ca2+ at later stages of leaf damage under high-temperature stress. LaCl3 down-regulated the physiological parameters and expression level of heat shock factor in 'Music Box' and `Galamadrid'. These results suggest that different I. germanica cultivars have varying high-temperature tolerance and furthermore that Ca2+ regulates their physiological indicators and expression level of heat shock factor under stress.
机译:尽管耐高温对于亚热带地区鸢尾品种在夏季的生存至关重要,但以前很少对此主题进行过生理研究。为了解决这个问题,本研究探索了四个耐热水平不同的德国德国稻的生理响应和热激因子的表达。通过测量胁迫下枯萎叶片的比例和面积来评估植物各自的高温耐受程度。研究了几种对高温的生理反应,包括对四个品种叶片中叶绿素,抗氧化酶,脯氨酸和可溶性蛋白质含量的影响。将CaCl2喷涂在被认为对高温敏感的“金童”和“皇家十字军”上,以研究Ca2 +是否可以提高耐受性,而LaCl3喷涂在具有更好高温耐受性的“ Music Box”和“ Galamadrid”上,以测试是否钙离子阻滞剂可能会降低其耐受性。根据保守区域序列部分克隆了热激因子基因,并彻底分析了CaCl2或LaCl3处理对高温胁迫的表达变化。结果表明,高温是造成大面积叶片枯萎的主要原因。 “音乐盒”和“加拉马德里”上枯萎的叶子的比例和面积都比“金童”和“皇家十字军”要小。 CaCl2减缓了“金童”和“皇家十字军”中叶绿素含量的降解,并增加了脯氨酸和可溶性蛋白质,但对激活过氧化物酶或超氧化物对提高高温耐受性没有显著作用。在高温胁迫下叶片损伤后期,Ca2 +上调了“金童”和“皇家十字军”中热休克因子的遗传表达。 LaCl3下调了“音乐盒”和“ Galamadrid”中的生理参数和热休克因子的表达水平。这些结果表明,不同的德国德国稻品种具有不同的高温耐受性,此外,Ca 2+调节其生理指标和胁迫下热激因子的表达水平。

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